β-hydroxybutyryllysine Specific Antibody Conjugated Agarose Beads

$999.00

SKU: WT9166B-300
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Product details

β-hydroxybutyryllysine Specific Antibody Conjugated Agarose Beads is an immunoaffinity enrichment tool for β-hydroxybutyryl lysine peptides in mass spectrometry-based proteomics. The highly specific antibody selectively captures target modified peptides without cross-reactivity, is applicable to all species, efficiently enriches low-abundance peptides and reduces background interference, delivering stable and reliable results for β-hydroxybutyryl lysine modification research.

Specifications

Targetβ-Hydroxybutyryllysine
ReactivitySpecies Independent
ApplicationIAC
MW(Calculated)
MW(Observed)
Host SpeciesRabbit
Isotype
ConjugateAgarose Beads
ModificationLysine β-Hydroxybutyrylation
Modified siteLys(K)
Recommended dilution ratio
Composition50/250 μL settled agarose beads supplied as 50% slurry, containing 66% glycerol
Purification process
Purity
StorageStore at-20°C and avoid freezing.
StabilityStable for 12 months from date of receipt
ClonalMonoclonal
Clone Number
Immunogen
Sequence
Specificity
Gene name
Protein Name
Alternative nameKbhb
Organism-1
GeneID-1
SwissProt-1
Organism-2
GeneID-2
SwissProt-2
Organism-3
GeneID-3
SwissProt-3
Organism-4
GeneID-4
SwissProt-4
BackgroundHistones are subject to a variety of enzyme-catalyzed modifications, including acetylation, methylation, phosphorylation, ubiquitination, etc. β-Hydroxybutyrylation of lysine (Kbhb) is a newly identified histone marker that is enriched in active gene promoters. Histone Kbhb marks are dramatically induced in response to elevated β-hydroxybutyrate levels in cultured cells and in livers from mice subjected to prolonged fasting or streptozotocin-induced diabetic ketoacidosis. Histone β-hydroxybutyrylation represents a new epigenetic regulatory mark that couples metabolism to gene expression, offering a new avenue to study chromatin regulation and diverse functions of β-hydroxybutyrate in the context of important human pathophysiological states, including diabetes, epilepsy, and neoplasia.
Cellular Localization
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